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PAX8 and MECOM are interaction partners driving ovarian cancer

Authors :
Johannes Voshol
Therese Stachyra
Alexandra Vissieres
Elisabeth Bechter
Verena Apfel
Erik Ahrné
Maria Wahle
Suzanne Chau
Ivana Moravec
Karolin Fiona Berneiser
Nathalie Carte
Tania Poetsch
Rui Lopes
Dirk Schübeler
Simon Haenni
Markus Kaufmann
Stephane Ferretti
Dirk Erdmann
Alexandra Hinniger
Marianne Bachmann Salvy
Jacques Hamon
Guglielmo Roma
Amanda Cobos-Correa
Ulrike Naumann
César Fernández
Louise Barys
Cristina Nieto-Oberhuber
Giorgio G. Galli
Melusine Bleu
Matteo Fischer
Felix Freuler
Sascha Gutmann
Kate Lawrenson
Fanny Mermet-Meillon
Tobias Schmelzle
Cecile Delmas
Laura Holzer
Marco Meyerhofer
Ines Barbosa
Source :
Nature Communications, Nature Communications, Vol 12, Iss 1, Pp 1-12 (2021)
Publication Year :
2020

Abstract

The transcription factor PAX8 is critical for the development of the thyroid and urogenital system. Comprehensive genomic screens furthermore indicate an additional oncogenic role for PAX8 in renal and ovarian cancers. While a plethora of PAX8-regulated genes in different contexts have been proposed, we still lack a mechanistic understanding of how PAX8 engages molecular complexes to drive disease-relevant oncogenic transcriptional programs. Here we show that protein isoforms originating from the MECOM locus form a complex with PAX8. These include MDS1-EVI1 (also called PRDM3) for which we map its interaction with PAX8 in vitro and in vivo. We show that PAX8 binds a large number of genomic sites and forms transcriptional hubs. At a subset of these, PAX8 together with PRDM3 regulates a specific gene expression module involved in adhesion and extracellular matrix. This gene module correlates with PAX8 and MECOM expression in large scale profiling of cell lines, patient-derived xenografts (PDXs) and clinical cases and stratifies gynecological cancer cases with worse prognosis. PRDM3 is amplified in ovarian cancers and we show that the MECOM locus and PAX8 sustain in vivo tumor growth, further supporting that the identified function of the MECOM locus underlies PAX8-driven oncogenic functions in ovarian cancer.<br />Lineage-restricted transcription factor PAX8 is oncogenic in ovarian cancer cells. Here the authors show that PAX8 interacts and recruits a splice variant of the MECOM locus PRDM3 to control the gene expression module involved in adhesion and extracellular matrix, and consequently promotes ovarian tumorigenesis.

Details

ISSN :
20411723
Volume :
12
Issue :
1
Database :
OpenAIRE
Journal :
Nature communications
Accession number :
edsair.doi.dedup.....0aaf78d1de96ff3b8d6880ccacc7215a